Cardiovascular Fitness in College Students: Role of Blood Type and Somatotype
DOI:
https://doi.org/10.51574/ijrer.v4i3.3019Keywords:
Athlete Performance, Blood Type, Collage Students, SomatotypeAbstract
This study intends to analyze the differences in cardiovascular endurance based on blood type and somatotype in college students. The study included 213 participants, consisting of 68 college students with blood type A, 68 with blood type B, 68 with blood type O, and 9 with blood type AB from the Faculty of Sport Science at Universitas Negeri Makassar. Cardiovascular endurance was assessed using the Multistage Fitness Test (MFT), blood type identification from the respondent's blood type card, and a somatotype assessment based on an anthropometric assessment. The investigation revealed that blood type O had stronger cardiovascular endurance than others, with a higher proportion of both satisfactory and fair categories. In contrast, blood type AB was associated with less endurance, with a large proportion in poor and destitute categories. Mesomorphs outperformed endomorphs and ectomorphs in terms of cardiovascular performance, which supports the theory that an individual's body type determines aerobic abilities. Furthermore, the chi-square test revealed a significant correlation between blood type and cardiovascular endurance (p < 0.05). This study considerably improves our understanding of how blood type and somatotype combinations affect athlete performance across various sports. This study recommends the integration of biometric and anthropometric data in athlete selection and development strategies to achieve optimal results.
References
Ahmed, O. S., Ahmed, S. S., & Dheyab, R. T. (2024). Body composition and physical fitness of different blood groups in Olympic athletes. Journal of Human Sport and Exercise, 19(1), 211–219. https://doi.org/10.14198/jhse.2024.191.19
Ahsan, M., & Ali, M. F. (2023). Comparison of physiological characteristics and physical performance measures among athletes from random intermittent dynamic type sports. Pedagogy of Physical Culture and Sports, 27(2), 146–157. https://doi.org/10.15561/26649837.2023.0207
Anggitasari, E. D., Dieny, F. F., & Candra, A. (2019). Hubungan somatotype dengan kesegaran jasmani atlet sepak bola. Jurnal Keolahragaan, 7(1), 11–22. https://doi.org/10.21831/jk.v7i1.21188
Bouchard, C., Malina, R. M., & Pérusse, L. (2015). Genetics of Fitness and Physical Performance. Human Kinetic
Campa, F., Silva, A. M., Talluri, J., Matias, C. N., Badicu, G., & Toselli, S. (2020). Somatotype and bioimpedance vector analysis: A new target zone for male athletes. Sustainability, 12(11), 4365. https://doi.org/10.3390/su12114365
Çinarli, F. S., & Kafkas, M. E. (2019). The effect of somatotype characters on selected physical performance parameters. Physical Education of Students, 23(6), 279–287. https://doi.org/10.15561/20755279.2019.0602
De Rose, E. H., de Almeida, A. L., & Nunes, J. E. (2014). Somatotype characteristics and athletic performance. Journal of Anthropometry, 12(1), 45–52
Esteve-Ibáñez, H., Drehmer, E., da Silva, V. S., Souza, I., Silva, D. A. S., & Vieira, F. (2025). Relationship of body composition and somatotype with physical activity level and nutrition knowledge in elite and non-elite orienteering athletes. Nutrients, 17(4), 714. https://doi.org/10.3390/nu17040714
Ferreira, S. A., Souza, W. C. D., Nascimento, M. A. D., Tartaruga, M. P., Portela, B. S., Mascarenhas, L. P. G., & Queiroga, M. R. (2017). Morphological characteristics, muscle strength, and anaerobic power performance of wheelchair basketball players. Revista Brasileira de Cineantropometria & Desempenho Humano, 19(3), 343-353. https://doi.org/10.5007/1980-0037.2017v19n3p343
Gale, K. (2016). The sports industry's new power play: Athlete biometric data domination. Who owns it and what may be done with it. Ariz. St. U. Sports & Ent. LJ, 6, 7. https://heinonline.org/HOL/LandingPage?handle=hein.journals/selj6&div=5&id=&page=
Garcia, M. A., & Canillas, J. A. (2023). Blood types and fitness capability of physical education students: a non-parametric analysis. Pedagogy of Physical Culture and Sports, 27(2), 165–172. https://doi.org/10.15561/26649837.2023.0209
Ghosh, M., Chatterjee, A., & Diaz, E. F. (2025). Assessment of Body Composition and Somatotype Among Sports Persons. In Sports Nutrition Methods (pp. 61-80). New York, NY: Springer US. https://doi.org/10.1007/978-1-0716-4370-9_5
Gutnik, B., Zuoza, A., Zuoziene, I., Alekrinskis, A., Nash, D., & Scherbina, S. (2015). Body physique and dominant somatotype in elite and low-profile athletes with different specializations. Medicina (Lithuania), 51(4), 247–252. https://doi.org/10.1016/j.medici.2015.07.003
Jakovljević, V., Bošnjak, G., Pašić, G., & Tešanović, G. (2022). Roll of Somatotype in Sport Selection. Acta Kinesiologica, N1 2022. https://doi.org/10.51371/issn.1840-2976.2022.16.1.11
Kamionka, A., Grzywacz, E., & Lipowski, M. (2020). Somatotypes of athletes with physical disabilities and the type of activity they undertake. Baltic Journal of Health and Physical Activity, 12(3), 5. https://doi.org/10.29359/BJHPA.12.3.05
Kathirgamam, V., Ambike, M., Bokan, R., Bharambe, V., & Prasad, A. (2020). Analyzing the effects of exercise prescribed based on health-related fitness assessment among different somatotypes. Journal of Health Sciences, 10(1), 83–89. https://doi.org/10.17532/jhsci.2020.876
Karkazis, K., & Fishman, J. R. (2017). Tracking US professional athletes: The ethics of biometric technologies. The American Journal of Bioethics, 17(1), 45-60. https://doi.org/10.1080/15265161.2016.1251633
Kikuchi, N., Miyamoto-Mikami, E., Murakami, H., Nakamura, T., Min, S. K., Mizuno, M., ... & Fuku, N. (2016). ACTN3 R577X genotype and athletic performance in a large cohort of Japanese athletes. European journal of sport science, 16(6), 694-701. https://doi.org/10.1080/17461391.2015.1071879
Li, N., Zhou, H., & Tang, Q. (2017). Red blood cell distribution width: a novel predictive indicator for cardiovascular and cerebrovascular diseases. Disease markers, 2017(1), 7089493. https://doi.org/10.1155/2017/7089493
Mangwayana, N. E., Mahachi, C., Taderera, T., & Chikwasha, V. (2021). The blood group as determinant of endurance in running a comparison between sedentary blood group O and non-blood group O individuals. Central African Journal of Medicine, 67(1-6), 8-13. https://www.ajol.info/index.php/cajm/article/view/224949
Masayuki, K. (2021). Blood type and its correlation with athletic performance in elite athletes. International Journal of Sports Science Studies, 8(3), 101–110
Nikbakht, M. (2011). Relationships between somatotype, anthropometry and physical fitness variables in untrained university students. Journal of Physical Education and Sport, 11(2), 211.
Peden, D. L., Rogers, R., Mitchell, E. A., Taylor, S. M., Bailey, S. J., & Ferguson, R. A. (2024). Skeletal muscle mitochondrial correlates of critical power and W'in healthy active individuals. Experimental Physiology. https://doi.org/10.1113/EP091835
Pilotto, A. M., Adami, A., Mazzolari, R., Brocca, L., Crea, E., Zuccarelli, L., ... & Porcelli, S. (2022). Near‐infrared spectroscopy estimation of combined skeletal muscle oxidative capacity and O2 diffusion capacity in humans. The Journal of physiology, 600(18), 4153-4168. https://doi.org/10.1113/JP283267
Ryan-Stewart, H., Faulkner, J., & Jobson, S. (2018). The influence of somatotype on anaerobic performance. PloS one, 13(5), e0197761. https://doi.org/10.1371/journal.pone.0197761
Sauvé, B., Haugan, M., & Paulsen, G. (2024). Physical and Physiological Characteristics of Elite CrossFit Athletes. Sports, 12(6). https://doi.org/10.3390/sports12060162
Shephard, R. J., & Shephard, R. J. (2015). The Modern Era: Blossoming of the Olympic Movement and the Conquest of Acute Disease. An Illustrated History of Health and Fitness, from Pre-History to our Post-Modern World, 715-901. https://doi.org/10.1007/978-3-319-11671-6_8
Sugiyono. (2015). Metode Penelitian Kuantitatif, Kualitatif, dan R&D. Alfabeta.
Widodo, L. Y., & Hanani, E. S. (2021). Profil VO2Max Peserta Ekstrakurikuler Olahraga Bola Basket di SMA Negeri 3 Kota Tegal. Indonesian Journal for Physical Education and Sport, 2(2), 650–661. https://doi.org/10.15294/inapes.v2i2.48996
Zhao, K., Hohmann, A., Chang, Y., Zhang, B., Pion, J., & Gao, B. (2019). Physiological, anthropometric, and motor characteristics of elite Chinese youth athletes from six different sports. Frontiers in physiology, 10, 405. https://doi.org/10.3389/fphys.2019.00405

Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2025 Arimbi Arimbi, Arifuddin Usman, Sarifin Sarifin, Poppy Elisano Arfanda, Andi Sri Dewi Anggraeni. M

This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.